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PTD08A006W Datasheet, PDF (4/15 Pages) Texas Instruments – 6-A, 4.75-V TO 14-V, NON-ISOLATED, DIGITAL POWERTRAIN™ MODULE
PTD08A006W
SLTS292A – JUNE 2009 – REVISED FEBRUARY 2010
www.ti.com
ELECTRICAL CHARACTERISTICS
PTD08A006W
TA= 25°C, FSW= 350kHz, VI= 12 V, VO= 3.3 V, VB= VI, CI1= 330 µF, CI2= 22 µF ceramic, CO1= 47 µF ceramic, CO2= 330 µF,
and IO= IO(max) (unless otherwise stated)
PARAMETER
TEST CONDITIONS
PTD08A006W
UNIT
MIN
TYP
MAX
IO
VI
VOADJ
Output current
Input voltage range
Output voltage adjust range
Over VO range
Over IO range
Over IO range
25°C, natural convection
h
Efficiency
VI = VB = 5 V
IO = 6 A,
fs = 350 kHz
VOPP
VB
VB
UVLO
VO Ripple (peak-to-peak)
Bias voltage
Bias voltage under voltage
lockout
IB
Bias current
20-MHz bandwidth
Inhibit (pin 8) to AGND
VO = 3.3 V
VO = 2.5 V
VO = 1.8 V
VO = 1.5 V
VO = 1.2 V
VO = 1.0 V
0
4.75
0.7 (1)
4.75
VB increasing
4.25
VB decreasing
4.0
Standby
Switching
95%
92%
89%
88%
86%
84%
20
4.5
4.25
4
34
6
A
14 (1)
V
3.6
V
14
4.75
4.5
mVPP
V
V
mA
VIH
High-level input voltage
VIL
Low-level input voltage
PWM input
SRE, INH, & PWM input levels
Frequency range
Pulse width limits
2.0
5.5
V
0.8
300
1000 kHz
130
ns
Range
-40
125 °C
TEMP output
Accuracy, -40°C ≤ TA ≤ 85°C
Slope
-4
10
6 °C
mV/°C
VOH
VOL
FAULT output
ILIM
Offset, TA = 0°C
High-level output voltage, IFAULT = 4mA
Low-level output voltage, IFAULT = 4mA
Overcurrent threshold; Reset, followed by auto-recovery
Range
500
2.7
3.3
0
14
0.15
mV
V
0.6
A
3.5
V
IOUT output
Gain
Offset, IO = 0A, VO = 1.2V
Output Impedance
130
190
250 mV/A
0.44
0.6
0.76
V
10
15
21 kΩ
CI
External input capacitance
Capacitance Value
CO
External output capacitance
Equivalent series resistance (non-ceramic)
Nonceramic
Ceramic
Nonceramic
Ceramic
330 (2)
µF
22 (2)
330 (3) 5000(4)
47 (3)
µF
(3)
1 (5)
mΩ
(1) The maximum input voltage is duty cycle limited to (VO/(130ns × FSW)) or 14 V, whichever is less. The maximum allowable input voltage
is a function of switching frequency.
(2) A 22 µF ceramic input capacitor is required for proper operation. An additional 330 µF bulk capacitor rated for a minimum of 500mA rms
of ripple current is recommended. When operating at frequencies > 500kHz the 22 µF ceramic capacitor is only recommended. Refer to
the UCD9240 controller datasheet and user interface for application specific capacitor specifications.
(3) A 47 µF ceramic output capacitor is required for basic operation. An additional 330 µF bulk capacitor is recommended for improved
transient response. When operating at frequencies > 500kHz the 47 µF ceramic capacitor is only recommended. Refer to the UCD9240
controller datasheet and user interface for application specific capacitor specifications.
(4) 5,000 µF is the calculated maximum output capacitance given a 1V/msec output voltage rise time. Additional capacitance or increasing
the output voltage rise rate may trigger the overcurrent threshold at start-up. Refer to the UCD9240 controller datasheet and user
interface for application specific capacitor specifications.
(5) This is the minimum ESR for all non-ceramic output capacitance. Refer to the UCD9240 controller datasheet and user interface for
application specific capacitor specifications.
4
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